|Publication number||US5179449 A|
|Application number||US 07/463,466|
|Publication date||Jan 12, 1993|
|Filing date||Jan 11, 1990|
|Priority date||Jan 11, 1989|
|Also published as||EP0378393A2, EP0378393A3|
|Publication number||07463466, 463466, US 5179449 A, US 5179449A, US-A-5179449, US5179449 A, US5179449A|
|Original Assignee||Kabushiki Kaisha Toshiba|
|Export Citation||BiBTeX, EndNote, RefMan|
|Patent Citations (6), Referenced by (62), Classifications (36), Legal Events (5)|
|External Links: USPTO, USPTO Assignment, Espacenet|
1. Field of the Invention
The present invention relates to an editing apparatus for a series of dynamic images and more particularly to an editing apparatus for a video tape consisting of a plurality of frames arranged into a series of different scenes.
2. Description of the Background
Recently, video cameras have been used for filming various home events such as picnics and parties due to the portability of small video cameras. At the same time, recording of television programs using a fixed recorder has also increased. Under both of these situations the editing of video tape often occurs at home. For example, it is often desired to erase the commercial parts from a recorded television program by dubbing the desired part of the tape onto a second tape. It may also be desired to copy only one scene, such as a picnic from a tape showing home events onto a second tape. Under these circumstances, it is necessary for the editor to stop the play of the original video tape at the beginning of the desired scene which is the boundary between two scenes. This could be the boundary between the commercial scene and the desired program or between two home events such as a party scene and a picnic scene. However, using present devices it is difficult to find this boundary. If the user tries to designate the stop position by watching the image, he cannot stop at the boundary line exactly. Accordingly, it often happens that some part of the scene is omitted or part of an undesired scene is included. It may also occur that when the tape is being played the user may want to see only a zoomed part and stop just before this part. When this happens the user must designate the stop position while watching the television display. It is often a problem that the position at which the user stops may actually be a number of frames forward or behind the boundary position.
Thus, present dynamic image editing apparatus makes it difficult for the user to stop at a boundary point (such as the starting frame of a commercial film, or the ending frame of a scene from a video camera) on the video tape at the exact point.
Accordingly, it is one object of the present invention to provide a dynamic image editor apparatus which can stop at a boundary point on a video tape exactly.
It is another object of the present invention to provide a dynamic image editor apparatus which can stop at a boundary regardless of whether the mode of the machine is play, fast forward or rewind.
It is another object of this invention to provide a dynamic image editor apparatus which recognizes a scene boundary according to a feature such as lightness or color of the video signal.
These and other objects of the present invention are accomplished by analyzing characteristic data (such as illuminance, volume, color-tone or density) for every frame on the video tape. According to the change of the characteristic data between neighboring frames, a scene boundary between changing images is detected. The tape may then be controlled to stop according to the scene boundary during a play, fast forward or rewind mode. As a result of this arrangement, the beginning frame for a series of scenes can be detected exactly.
FIG. 1 shows a schematic of a dynamic image editor apparatus of the present invention.
FIG. 2 shows an example of a boundary between scenes.
FIG. 3 shows a flow chart of the process for finding a scene boundary according to the present invention.
FIG. 4 shows one format of the top memory section according to the present invention.
FIGS. 5a, 5b, 6A to 6F show specific examples of data analysis according to the present invention.
FIG. 7 shows a flow chart for a real time analysis according to the present invention.
FIG. 8 shows a flow chart for the determining process according to the present invention.
Various other objects, features and attendant advantages of the present invention will be more fully appreciated as the same becomes better understood from the following detailed description when considered in connection with the accompanying drawings in which like reference characters designate like or corresponding parts throughout the several views and wherein FIG. 1 shows the construction of a dynamic image editor apparatus according to the present invention. A dynamic image memory section 1 which is a recording medium of a video tape, CD, etc., memorizes a dynamic image from a video signal. Detector section 4 analyzes the characteristic data of the dynamic image.
The input section 2 has manually operated switches for varying modes of operation. In addition to the normal switches for play, fast forward and rewind, the input section has switches for beginning-forward and beginning-rewind. The control section 3 controls the passage of signals among the memory section 1, the input section 2 and the detector section 4.
FIG. 2 shows a part of a video tape having a scene boundary between two scenes which may be detected by detecting section 4. Frame numbers are placed below each frame of the scenes. The frames up through 83 relate to a picnic scene while the scene starting with frame 84 relate to a birthday party. A scene boundary occurs between frames 83 and 84. The present apparatus acts to find this scene boundary at the beginning of the birthday party scene.
The detector section 4 includes a data measurement section 5, data analysis section 6 and a beginning memory 7. The data measurement section 5 measures at least one characteristic such as illuminance, volume, color-tone and density for the video signal from each frame. The data analysis section 6 compares the values of the measured characteristic data between adjacent frames and detects the beginning frame in a scene when there is a large differential in the characteristic between two frames. The beginning memory section 7 memorizes the frame number of the beginning frame of a scene as detected by the data analysis section 6.
The data measurement section 5 takes a measurement of a specific feature such as the lightness or color hue of a video signal and integrates it over the entire frame. For example in the case of a lightness analysis, the data measurement section can use information from the automatic gain controller which contains a signal used for fixing the lightness gain in a frame. A simple example of the type of circuit necessary for this is a standard integration circuit using a resistor and capacitor.
FIG. 5a shows an example of the output of the data measurement section. The frame numbers are plotted along the horizontal axis while the illuminance is plotted vertically. As can easily be seen, when the scene changes from frame 83 to frame 84 the level of illuminance changes drastically.
In FIG. 5b the difference in illuminance between a frame and its neighboring frame is plotted against the frame numbers. As is easily seen, the scene boundary between frames 83 and 84 shows a much larger difference than between the other frames since a change in scene occurs. A threshold value such as a difference of 50 lux can be established in advance. Any frames which exceed this threshold level are indicated as being boundaries between scenes. In this case, frame 84 is considered to be a boundary and the beginning of a new scene. The particular value of the threshold which is selected may be varied. If the threshold value is set too low, it will never fail to detect a beginning frame. However, it may also detect mistakingly other frames which are not beginning frames. Since the user can keep skipping to the scene he desires this is usually not a problem. If higher thresholds are utilized there is a possibility that the beginning of some scenes may be missed. However, no extraneous beginnings will occur.
Other types of characteristic data may be used in place of illuminance. Thus, these may involve volume, color-tone, density and so on.
FIG. 6a and 6b show an example of using color density for making the same determination. Three charts are shown in FIG. 6a to show the density of red, green and blue colors for the various frames. The differences between frames is plotted in FIG. 6b in the same manner as shown in FIG. 5b except that a separate chart is shown for each color. If at least one color has a difference which exceeds a threshold, a scene boundary is determined. Thus, in FIG. 6b frame 107 is considered to be a boundary since both red and green difference values exceed the threshold.
Once the scene boundaries are detected, they may be recorded in the beginning memory section 7. FIG. 4 shows a simple recording method for holding the information in the top member section. Thus, the various scene boundaries are associated by sequential pointer numbers in the memory. This memory is utilized if the tape is first subjected to an analysis operation so that all of the scene boundaries discovered and recorded. After all of these boundaries are detected, the editing operation begins using the pointer numbers to control the scenes to be observed. A second possibility is to do the analysis in real time, that is to form a one step operation by determining scene boundaries as the video tape is first scanned and stopping at the boundaries as necessary. In this operation the beginning memory section is not utilized.
FIG. 3 shows a flow chart for the control of the tape for the beginning-forward and beginning-rewind modes using the two step method. In preliminary step a the present frame number is assigned as n. i is assigned the pointer number from the beginning memory section which corresponds to the last scene boundary. For example, if the present frame number is 73, n=73. Since 73 falls between frame 1 and frame 84 i is given the value of 1.
In step b, the mode of operation is determined to be the beginning-forward mode which leads to step d, the beginning-rewind mode which leads to step i or other modes which lead to step c. In the case of other modes, the appropriate processing occurs which is not part of the present invention. For the beginning forward mode, i is increased by 1 and the frame number for that pointer determined, if there is one. If not, the tape is moved to the last frame and stopped. If there is a frame number, the tape moves to that position and stops. Therefore, in the present example since the present frame number is 73 the tape will move to frame 84 and stop. The user may then view or record beginning with the party scene.
In the case of a beginning-rewind mode the pointer is first reduced by 1. If the resultant pointer is less than or equal to zero, it is reset to 1 and the tape is rewound to the beginning of the tape, that is, frame 1 and stopped. If i is greater than 0, the frame number of that pointer is determined and the tape wound to that point and stopped.
Thus, in operation a tape is first measured frame-by-frame according to a characteristic such as illuminance and the differences between adjoining frames is determined and compared to a threshold. When a threshold is exceeded, a scene boundary is determined and recorded in the beginning memory section. When the editing operation proceeds, the beginning of the next higher or lower scene may be automatically obtained depending upon which mode is selected.
In a second embodiment, the memory section is not used and the frames are examined in real time one at a time in an increasing or decreasing manner until the next scene boundary is discovered.
FIG. 8 shows a flow chart of the process for determining how the number i, the pointer number of the scene boundary is determined by the number n, the current frame number and the contents of the beginning memory section. This process is done in conjunction with the process of FIG. 3. The pointer number i is increased one at a time until the frame number corresponding to that pointer is greater than the current frame number. In other words, the pointer number given to the scene boundary is the next highest pointer beyond the present scene number.
Another method of operation of the analysis section does not utilize the beginning memory section and requires only a single operation. This process is shown in FIG. 7. After determining the current frame number n in step i, it is determined whether a beginning-forward, beginning-rewind or other mode is desired in step j. If other modes are utilized, that type of processing occurs in step a which does not form part of the present invention. For a beginning-forward mode the frame number is increased one step at a time and each current frame is then analyzed according to the data analysis section 6. If the current frame is the beginning frame of a scene, the process is stopped. If not the frame number returns to be increased by one until such a scene boundary is found. In the rewind situation the same process is followed except the frame number is counted down rather than counted up as shown in step 1.
Obviously, numerous modifications and variations of the present invention are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims, the invention may be practiced otherwise than as specifically described herein.
|Cited Patent||Filing date||Publication date||Applicant||Title|
|US4774582 *||Dec 19, 1986||Sep 27, 1988||Sony Corporation||Picture-in picture television receiver with step-by-step still picture control|
|US4890168 *||May 19, 1988||Dec 26, 1989||Sanyo Electric Co., Ltd.||Program scan apparatus for VTR utilizing picture-in-picture display|
|US4974111 *||Jul 1, 1986||Nov 27, 1990||Deutsche Thomson-Brandt Gmbh||Method and apparatus for electronically processing and rerecording recorded video signals|
|US4985755 *||Dec 26, 1989||Jan 15, 1991||Kabushiki Kaisha Toshiba||Area specifying signal generation device using output video signal from video camera|
|US4990782 *||Jun 23, 1989||Feb 5, 1991||Santa Barbara Research Center||Radiation shield for thermoelectrically cooled infrared detectors|
|US4998171 *||Aug 28, 1989||Mar 5, 1991||Samsung Electronics Co., Ltd.||Automatic shift circuit for a sub-picture screen for picture-in-picture feature|
|Citing Patent||Filing date||Publication date||Applicant||Title|
|US5459517 *||Dec 14, 1993||Oct 17, 1995||Fuji Xerox Co., Ltd.||Moving picture scene detection system|
|US5471316 *||Jun 15, 1993||Nov 28, 1995||Pioneer Electronic Corporation||Adaptive system for selectively recording from a plurality of video sources and method thereof|
|US5485553 *||Oct 29, 1993||Jan 16, 1996||Hewlett-Packard Company||Method and apparatus for managing and initiating video capture and printing|
|US5521841 *||Mar 31, 1994||May 28, 1996||Siemens Corporate Research, Inc.||Browsing contents of a given video sequence|
|US5526133 *||Jun 28, 1994||Jun 11, 1996||Sensormatic Electronics Corporation||System and method for logging and retrieving information on video cassettes in a computer controlled surveillance system|
|US5532833 *||May 11, 1994||Jul 2, 1996||International Business Machines Corporation||Method and system for displaying selected portions of a motion video image|
|US5537528 *||Feb 16, 1993||Jul 16, 1996||International Business Machines Corporation||System and method for inputting scene information|
|US5550965 *||Dec 27, 1993||Aug 27, 1996||Lucent Technologies Inc.||Method and system for operating a data processor to index primary data in real time with iconic table of contents|
|US5576950 *||Jul 26, 1994||Nov 19, 1996||Nippon Telegraph And Telephone Corporation||Video image search method and system using the same|
|US5604512 *||Dec 21, 1994||Feb 18, 1997||Sanyo Electric Co., Ltd.||Still picture reproduction system that allows skip retrieval|
|US5675696 *||Oct 23, 1995||Oct 7, 1997||Mitsubishi Denki Kabsuhiki Kaisha||Digital video signal recording and reproducing apparatus|
|US5689610 *||Jun 20, 1994||Nov 18, 1997||Eastman Kodak Company||Method of making an index print having an indicator of substantially where an image is stored on a motion picture image recording medium|
|US5835663 *||Dec 10, 1996||Nov 10, 1998||Sony Corporation||Apparatus for recording image data representative of cuts in a video signal|
|US5838301 *||Oct 30, 1996||Nov 17, 1998||Sanyo Electric Co., Ltd.||Still picture reproduction system that allows skip|
|US5900919 *||Dec 2, 1996||May 4, 1999||Industrial Technology Research Institute||Efficient shot change detection on compressed video data|
|US5959800 *||Jan 24, 1997||Sep 28, 1999||Exabyte Corporation||Early warning for boundary position in serpentine recording|
|US6055025 *||Dec 21, 1993||Apr 25, 2000||Lucent Technologies, Inc.||Method and apparatus for detecting abrupt and gradual scene changes in image sequences|
|US6271892||Jun 2, 1994||Aug 7, 2001||Lucent Technologies Inc.||Method and apparatus for compressing a sequence of information-bearing frames having at least two media|
|US6342904||Dec 17, 1998||Jan 29, 2002||Newstakes, Inc.||Creating a slide presentation from full motion video|
|US6473095||Jul 16, 1998||Oct 29, 2002||Koninklijke Philips Electronics N.V.||Histogram method for characterizing video content|
|US6496228||Nov 4, 1999||Dec 17, 2002||Koninklijke Philips Electronics N.V.||Significant scene detection and frame filtering for a visual indexing system using dynamic thresholds|
|US6721490 *||Sep 30, 1999||Apr 13, 2004||Kabushiki Kaisha Toshiba||Hierarchical storage scheme and data playback scheme for enabling random access to realtime stream data|
|US6856757||Mar 22, 2001||Feb 15, 2005||Koninklijke Philips Electronics N.V.||Apparatus and method for detecting sports highlights in a video program|
|US6892351||Jan 17, 2002||May 10, 2005||Newstakes, Inc.||Creating a multimedia presentation from full motion video using significance measures|
|US7194186 *||Apr 21, 2000||Mar 20, 2007||Vulcan Patents Llc||Flexible marking of recording data by a recording unit|
|US7480446||Feb 20, 2004||Jan 20, 2009||Vulcan Patents Llc||Variable rate video playback with synchronized audio|
|US7519271||Jan 22, 2004||Apr 14, 2009||Vulcan Patents Llc||Low attention recording with particular application to social recording|
|US7565681||Apr 13, 2005||Jul 21, 2009||Vulcan Patents Llc||System and method for the broadcast dissemination of time-ordered data|
|US7580610||Feb 18, 2004||Aug 25, 2009||Kabushiki Kaisha Toshiba||Hierarchical storage scheme and data playback scheme for enabling random access to realtime stream data|
|US7672564 *||Sep 2, 2003||Mar 2, 2010||Sony Corporation||Information processing apparatus for automatically recording video data from a first recording medium in a first format to a second recording medium in a second format|
|US7849475||Jul 8, 2004||Dec 7, 2010||Interval Licensing Llc||System and method for selective recording of information|
|US8046818||Feb 19, 2009||Oct 25, 2011||Interval Licensing Llc||System and method for the broadcast dissemination of time-ordered data|
|US8176515||Mar 5, 2007||May 8, 2012||Interval Licensing Llc||Browser for use in navigating a body of information, with particular application to browsing information represented by audiovisual data|
|US8238722||Nov 4, 2008||Aug 7, 2012||Interval Licensing Llc||Variable rate video playback with synchronized audio|
|US8341688||Sep 19, 2011||Dec 25, 2012||Interval Licensing Llc||System and method for the broadcast dissemination of time-ordered data|
|US8363960 *||Mar 20, 2008||Jan 29, 2013||Fraunhofer-Gesellschaft Zur Foerderung Der Angewandten Forschung E.V.||Method and device for selection of key-frames for retrieving picture contents, and method and device for temporal segmentation of a sequence of successive video pictures or a shot|
|US8364027||Jan 12, 2009||Jan 29, 2013||Canon Kabushiki Kaisha||Image reproduction apparatus and method|
|US8369967||Mar 7, 2011||Feb 5, 2013||Hoffberg Steven M||Alarm system controller and a method for controlling an alarm system|
|US8429244||Mar 26, 2009||Apr 23, 2013||Interval Licensing Llc||Alerting users to items of current interest|
|US8583263||Mar 8, 2011||Nov 12, 2013||Steven M. Hoffberg||Internet appliance system and method|
|US8584158||Nov 11, 2010||Nov 12, 2013||Interval Licensing Llc||System and method for selective recording of information|
|US8726331||Sep 14, 2012||May 13, 2014||Interval Licensing Llc||System and method for the broadcast dissemination of time-ordered data|
|US8892495||Jan 8, 2013||Nov 18, 2014||Blanding Hovenweep, Llc||Adaptive pattern recognition based controller apparatus and method and human-interface therefore|
|US8995823||Jun 27, 2013||Mar 31, 2015||HighlightCam, Inc.||Method and system for content relevance score determination|
|US20020136528 *||Mar 22, 2001||Sep 26, 2002||Philips Electronics North America Corporation||Apparatus and method for detecting sports highlights in a video program|
|US20020140721 *||Jan 17, 2002||Oct 3, 2002||Newstakes, Inc.||Creating a multimedia presentation from full motion video using significance measures|
|US20030202110 *||Apr 30, 2002||Oct 30, 2003||Owens James W.||Arrangement of images|
|US20040156616 *||Jan 22, 2004||Aug 12, 2004||Strub Henry B.||Low attention recording with particular application to social recording|
|US20040170379 *||Feb 18, 2004||Sep 2, 2004||Kabushiki Kaisha Tohsiba||Hierarchical storage scheme and data playback scheme for enabling random access to realtime stream data|
|US20060031879 *||Apr 29, 2005||Feb 9, 2006||Vulcan Inc.||Management and non-linear presentation of news-related broadcasted or streamed multimedia content|
|US20060031885 *||Apr 29, 2005||Feb 9, 2006||Vulcan Inc.||Management and non-linear presentation of music-related broadcasted or streamed multimedia content|
|US20060031916 *||Apr 29, 2005||Feb 9, 2006||Vulcan Inc.||Management and non-linear presentation of broadcasted or streamed multimedia content|
|US20060126449 *||Sep 2, 2003||Jun 15, 2006||Makoto Urushihara||Information processing device and program|
|US20080092048 *||Dec 14, 2005||Apr 17, 2008||Kenji Morimoto||Data Processor|
|US20080127240 *||Jul 8, 2004||May 29, 2008||Michele Mae Covell||System and method for selective recording of information|
|US20080232687 *||Mar 20, 2008||Sep 25, 2008||Christian Petersohn||Method and device for selection of key-frames for retrieving picture contents, and method and device for temporal segmentation of a sequence of successive video pictures or a shot|
|US20090190898 *||Jul 30, 2009||Canon Kabushiki Kaisha||Image reproduction apparatus and method|
|US20090276817 *||Nov 5, 2009||Vulcan Inc.||Management and non-linear presentation of music-related broadcasted or streamed multimedia content|
|US20090285566 *||Nov 19, 2009||Saijo Hitoshi||Video processing apparatus|
|USRE43462||Apr 28, 1999||Jun 12, 2012||Kinya (Ken) Washino||Video monitoring and conferencing system|
|WO1996008108A1 *||Sep 5, 1995||Mar 14, 1996||Unilearn Inc||A computer controlled video interactive learning system|
|WO1999005865A1 *||Jul 22, 1998||Feb 4, 1999||Univ Illinois||Content-based video access|
|U.S. Classification||386/278, 348/E05.067, G9B/27.021, G9B/27.011, G9B/27.006, G9B/27.029, G9B/27.02, 386/249, 386/241|
|International Classification||G06F17/30, G11B27/10, G11B27/11, G11B27/02, H04N5/91, H04N5/14, G11B27/024, G11B27/032, H04N9/79, G11B27/28, H04N5/7826, H04N5/78, G11B15/087|
|Cooperative Classification||H04N5/147, G11B27/107, G11B2220/90, G11B27/032, G11B2220/65, G11B27/024, G11B27/11, G11B27/28|
|European Classification||G11B27/032, G11B27/28, G11B27/11, G11B27/10A2, H04N5/14S, G11B27/024|
|May 26, 1992||AS||Assignment|
Owner name: KABUSHIKI KAISHA TOSHIBA, JAPAN
Free format text: ASSIGNMENT OF ASSIGNORS INTEREST.;ASSIGNOR:DOI, MIWAKO;REEL/FRAME:006135/0652
Effective date: 19900214
|Jul 2, 1996||FPAY||Fee payment|
Year of fee payment: 4
|Aug 8, 2000||REMI||Maintenance fee reminder mailed|
|Jan 14, 2001||LAPS||Lapse for failure to pay maintenance fees|
|Mar 20, 2001||FP||Expired due to failure to pay maintenance fee|
Effective date: 20010112